Apparatus and methods for processing ceramic fiber
US-2017144925-A1 · May 25, 2017 · US
US10800710B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-10800710-B2 |
| Application number | US-201815866509-A |
| Country | US |
| Kind code | B2 |
| Filing date | Jan 10, 2018 |
| Priority date | Jan 10, 2018 |
| Publication date | Oct 13, 2020 |
| Grant date | Oct 13, 2020 |
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A ceramic fiber processing apparatus and method for processing ceramic fibers for the manufacture of ceramic matrix composites (CMCs) is provided. The apparatus includes a frame including a plurality of unidirectional ceramic fibers wound thereabout and extending across a void therein the frame to define a first planar array of ceramic fibers and a second planar array of ceramic fibers. During use, the frame is disposed in the ceramic fiber processing apparatus in a manner to enable gripping of the first planar array of ceramic fibers with a first gripper assembly and gripping of the second planar array of ceramic fibers with a second gripper assembly. A cutting mechanism provides cutting of the plurality of unidirectional ceramic fibers to separate the first planar array of ceramic fibers and the second planar array of ceramic fibers from one another.
Opening claim text (preview).
What is claimed is: 1. A method of processing a plurality of ceramic fibers in a ceramic fiber processing apparatus for the manufacture of a ceramic matrix composite (CMC) article, comprising: providing a frame including a plurality of unidirectional ceramic fibers disposed thereabout and extending across a void therein the frame to define a first planar array of ceramic fibers and a second planar array of ceramic fibers; disposing the frame in the ceramic fiber processing apparatus; gripping the first planar array of ceramic fibers with a first gripper assembly and gripping the second planar array of ceramic fibers with a second gripper assembly; cutting the plurality of unidirectional ceramic fibers to separate the first planar array of ceramic fibers and the second planar array of ceramic fibers from one another. 2. The method of claim 1 , wherein providing the frame includes winding the plurality of unidirectional ceramic fibers about the frame to define the first planar array of ceramic fibers and the second planar array of ceramic fibers. 3. The method of claim 1 , wherein the first gripper assembly comprises a plurality of first gripping fingers and a plurality of second gripping fingers and wherein the second gripper assembly comprises a plurality of first gripping fingers and a plurality of second gripping fingers. 4. The method of claim 3 , wherein each of the plurality of first gripping fingers of the first gripper assembly and the second gripper assembly includes a plurality of magnets in an alternating N-S configuration and each of the plurality of second gripping fingers includes a plurality of magnets in an alternating N-S configuration. 5. The method of claim 4 , wherein the step of gripping the first planar array of ceramic fibers with the first gripper assembly and gripping the second planar array of ceramic fibers with the second gripper assembly further comprises moving each of the plurality of first gripping fingers relative to a respective one of the second gripping fingers of the plurality of second gripping fingers. 6. The method of claim 5 , wherein the step of moving comprises actuating one or more clamping cylinder mechanisms to clamp each of the first gripping fingers relative to a respective second gripping finger of the plurality of second gripping fingers. 7. The method of claim 6 , wherein the step of moving further comprises actuating one or more sliding cylinder mechanisms to slidingly move each of the first gripping fingers relative to a respective second gripping finger of the plurality of second gripping fingers. 8. The method of claim 7 , wherein slidingly moving each of the first gripping fingers relative to a respective second gripping finger of the plurality of second griping fingers translates into a grip force and provides engagement of the plurality of magnets of each of the first gripping fingers with the plurality of magnets of the respective second gripping finger in a first condition. 9. The method of claim 7 , wherein slidingly moving each of the first gripping fingers relative to a respective second gripping finger of the plurality of second gripping fingers translates into a grip release force and provides disengagement of the plurality of magnets of each of the first gripping fingers with the plurality of magnets of the respective second gripping finger in a second condition. 10. The method of claim 1 , further comprising moving the first planar array of ceramic fibers from the processing apparatus with the first fiber gripper assembly subsequent to separation from the second planar array of ceramic fibers for additional processing. 11. The method of claim 10 , further comprising moving the second planar array of ceramic fibers from the processing apparatus with the second fiber gripper assembly for additional processing subsequent to separation from, and moving, of the first planar array of ceramic fibers. 12. A ceramic fiber processing apparatus for the manufacture of a ceramic matrix composite (CMC) article, comprising: a frame including a plurality of unidirectional ceramic fibers wound thereabout and extending across a void therein the frame to define a first planar array of ceramic fibers and a second planar array of ceramic fibers; a first gripper assembly configured to grip the first planar array of ceramic fibers; a second gripper assembly configured to grip the second planar array of ceramic fibers; and a cutting mechanism to separate the first planar array of ceramic fibers and the second planar array of ceramic fibers from one another. 13. The apparatus claim 12 , wherein the first gripper assembly comprises a plurality of first gripping fingers and a plurality of second gripping fingers and wherein the second gripper assembly comprises a plurality of first gripping fingers and a plurality of second gripping fingers. 14. The apparatus claim 13 , wherein each of the plurality of first gripping fingers includes a plurality of magnets in an alternating N-S configuration and each of the plurality of second gripping fingers includes a plurality of magnets in an alternating N-S configuration. 15. The apparatus claim 14 , wherein each of the plurality of first gripping fingers is moveable relative to a respective one of the second gripping fingers of the plurality of second gripping fingers. 16. The apparatus claim 15 , further comprising one or more clamping cylinder mechanisms configured to clamp each of the first gripping fingers relative to a respective second gripping finger of the plurality of second griping fingers. 17. The apparatus claim 15 , further comprising one or more sliding cylinder mechanisms to slidingly move each of the first gripping fingers relative to a respective second gripping finger of the plurality of second gripping fingers. 18. The apparatus claim 17 , wherein during a first condition each of the first gripping fingers is slidingly moved relative to a respective second gripping finger of the plurality of second griping fingers providing engagement of the plurality of magnets of the first gripping fingers with the plurality of magnets of the second gripping fingers. 19. The apparatus claim 17 , wherein during a second condition each of the first gripping fingers is slidingly moved relative to a respective second gripping finger of the plurality of second griping fingers providing disengagement of the plurality of magnets of the first gripping fingers with the plurality of magnets of the second gripping fingers. 20. A ceramic fiber processing apparatus for the manufacture of a ceramic matrix composite (CMC) article, comprising: a frame including a plurality of unidirectional ceramic fibers wound thereabout and extending across a void therein the frame to define a first planar array of ceramic fibers and a second planar array of ceramic fibers; a first gripper assembly comprising a plurality of first gripping fingers and a plurality of second gripping fingers and configured to grip the first planar array of ceramic fibers therebetween; a second gripper assembly comprising a plurality of first gripping fingers and a plurality of second gripping fingers and configured to grip the second planar array of ceramic fibers therebetween; and a cutting mechanism to separate the first planar array of ceramic fibers and the second planar array of ceramic fibers from one another, wherein each of the plurality of first gripping fingers includes a plurality of magnets in an alternating N-S configuration and each of the plurality of second gripping fing
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